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11.
以钢铁盐酸酸洗废液为原料,亚硝酸钠为催化剂,氧气为氧化剂,在填料塔中催化氧化制备三氯化铁。考察了反应温度、催化剂加入量和添加方式、循环流量等对制备三氯化铁的影响。实验结果表明,在优化的工艺条件为料液预热温度为60 ℃、催化剂加入量为钢铁盐酸酸洗废液总质量的0.30%、料液循环流量6.0 m3/h的条件下,反应80~120 min,酸洗废液中的Fe2+完全氧化为Fe3+。  相似文献   
12.
钛白副产硫酸亚铁的综合利用研究   总被引:3,自引:0,他引:3  
以钛白副产硫酸亚铁、氯化钾和氨水为原料,采用硫酸钾铵法制取硫酸钾。实验结果表明,该工艺生产的产品,其质量达到ZBG-21006-89国家标准,且此工艺流程简单、操作方便、条件易控制,无二次污染。  相似文献   
13.
利用含铁的低品位铝矾土为主要原料,添加适量铝酸钙粉,制备出絮凝剂聚合氯化铝铁.制备方法为酸溶两步法.对影响聚合铝铁制备的因素,如盐酸浓度、盐酸用量、温度和铝酸钙粉用量等进行了系统研究,得到了制备聚合铝铁的优化条件,同时将该絮凝剂用于实际工业污水的处理.研究结果表明:制备的絮凝剂絮凝效果明显优于一些传统的絮凝剂;不仅具有去浊性能好、沉降快的优点,而且具有原料易得,制备成本低的优势.  相似文献   
14.
Yasuhara A  Katami T  Shibamoto T 《Chemosphere》2006,62(11):1899-1906
Polyvinylidene chloride (PVDC; polymer of 1,1-dichloroethylene) was combusted with paper in a well-controlled, small-scale incinerator at an average grate temperature of 700 °C, and then dioxins (PCDDs, PCDFs, and coplanar-PCBs) formed in the exhaust gases were analyzed by gas chromatography/mass spectrometry. PVDC lowered the combustion temperature due to its less flammable character. The amount of total dioxins (PCDDs + PCDFs + coplanar-PCBs) formed in the exhaust gas was 58.0 ng/g of a combustion sample and its toxicity equivalency quantity (TEQ) value was 0.64 ng-TEQ/g. The amount of PCDDs formed in the sample ranged from 2.33 ng/g (Cl8-isomer) to 0.048 ng/g (Cl1-isomer). The lower the number of chloride, the less production of PCDDs. On the other hand, there was no relation between the number of chloride and PCDF formation. The amount of PCDFs formed in the sample ranged from 8.02 ng/g (Cl2-isomer) to 4.46 ng/g (Cl8-isomer). A polyvinylchloride (PVC) sample produced 207 ng/g of total dioxins and a PVDC sample produced 57.4 ng/g of total dioxins when they were combusted under the same conditions. An approximately equal composition of dioxin isomers was formed from PVDC and PVC samples. Paper was found to contribute to PCDF formation when it was combusted with plastics.  相似文献   
15.
Background Worldwide, large amounts of sediments have to be dredged annually from waterways and harbours. These sediments are sometimes polluted with a variety of toxic compounds. In some countries, including Belgium, the load with the biocide tributyltin (TBT) from ship coatings prohibits the dumping of harbour sludge into the sea. Land-based dumping is a commonly used alternative. Objective This research investigated the feasibility to use land-deposited harbour sludge for plant production. In a field trial, the growth of 38 more or less salt-tolerant plant species on low and high TBT-contaminated sediments was studied. The elimination of TBT from sludge with and without vegetation was compared. The uptake of TBT and its degradation products di- and monobutyltin (DBT and MBT) into harvest products under field conditions was determined. - Experimental Set-up. Sediments dredged in May 2003 from the brackish waters of the port of Antwerp were analysed in the laboratory for soil texture, pH, electroconductivity, sodium, magnesium, potassium, calcium, ammonium, nitrate, total nitrogen, chloride, sulphur and the organotins TBT, DBT and MBT. The sediments were lagooned for one year to dewater, desalinate and improve their structure. Salt-tolerant domestic and wild plants were selected and sown in May 2004. In August 2004, plants were harvested and the produced biomass was determined. Samples were taken from vegetated and non-vegetated top and bottom sediments and from plants growing above soil and analysed for TBT, DBT and MBT. Results The fresh sediments showed a good supply with nutrients and a neutral pH, but were rather saline (EC 14 mS cm-1 of the saturated paste extract). The salinity decreased to 3.7 mS cm-1 during lagoonation. The high and the low contaminated sediment had initially 43 and 1.6 mg TBT kg-1 dry weight, respectively. Besides TBT, several other contaminants were present in the sediments at critical levels. The biomass production of the plant species from the field trial ranged from 0.2 to 13 tons dry mass per hectare. Plants performing excellently were barley, sorghum, rape seed, a clover/grass mix and reed. If at all, a positive influence of TBT on plant growth was seen. TBT was degraded significantly faster (>40%) below barley. The uptake of TBT, DBT and MBT into stem and leaves of reed, grass and clover was very low, but measurable and not related to concentrations in soil. No uptake of TBT or its metabolites into corn of barley was found. Discussion This study confirmed former results: the toxicity of TBT to higher plants is low, and even high levels in soils would not be a hindrance for crop production. The removal of TBT seemed to be increased by both lagooning and plant growth, although the target values for sea dumping in use in certain European countries were not reached. A plausible explanation for the faster degradation of TBT under vegetation is that oxygen is a limiting factor, and plants dewater the soil, thus aerating it. The uptake of the organotins TBT, DBT and MBT into harvest products is probably due to attached soil particles. Conclusions To summarize, barley was the optimal species: it grew very well despite the salinity of the dredged sediments, it had a significantly positive effect on TBT removal; it showed no measurable uptake of TBT or the other butyltins into the harvested product; and it is a cash crop well established in European agriculture. Outlook The amounts of dredged sediments are high, and good soils are becoming increasingly rare. The feasibility of using dredged sediments for non-food production, such as energy crops, should be investigated by a critical risk assessment.  相似文献   
16.
水源水体富营养化及造成的藻类水华是淡水生态系统面临的主要问题之一,严重威胁城市供水。以华南地区赤水水库为例,基于2019年5月暴发的蓝藻水华事件,开展了水库水质、蓝藻密度的监测分析及壳聚糖改性高岭土复合聚合氯化铝的应急除藻技术研究,确定了絮凝剂的最佳投加量并评估了除藻效果。结果表明: 水华暴发时取水口表层TN、TP浓度超过地表水III标准且水体主要限制性元素为磷,若集水区内磷的浓度继续增大,则水华暴发的频率继续增加;此次蓝藻水华的优势种为铜绿微囊藻,且垂向主要聚集在表层及水下5 m处,随水深的增加藻细胞密度逐渐降低,表层藻细胞密度高达6.87×108 cells·L−1;采用壳聚糖改性高岭土复合聚合氯化铝去除蓝藻效果较好,在改性黏土投加100 mg·L−1,聚合氯化铝投加10 mg·L−1时,1 h去除率约60%,且随着时间延长,去除率持续提高。改性黏土复合聚合氯化铝能在短期内使藻类沉降至水库底部,可应用于湖库型饮用水源蓝藻水华的应急处置。  相似文献   
17.
为探究饮用水厂滤池反冲洗水和排泥水的直接回用和处理后回用对水厂的影响及两类水处理过程中的差异,采用了污染负荷计算、实验室混凝小试和现场混凝-超滤中试装置对两类生产废水分别进行了研究。溶解性有机碳(dissolved organic carbon,DOC)、氨氮 (NH4+-N)、Al3+和全氟类化合物(perfluorinated compounds,PFASs)的污染负荷计算结果表明生产废水直接回用会为水厂带来一定的额外负荷,其中排泥水和反冲洗水分别对PFASs和Al3+负荷贡献较大;通过对小试中浊度,UV254以及5种荧光组分去除效果的对比,反冲洗水的混凝效果稍好于排泥水,同时10 mg·L−1的聚合氯化铝为最佳混凝剂方案;在中试过程中,两类水中的浊度、有机物、Al3+和PFASs均可被有效去除,出水差异较小,但反冲洗水中的亲水性和小分子有机物使得其去除效果低于排泥水。总体来说,经过处理之后,两类生产废水均可回用,回用可有效减少废水排放量,提高水厂水资源利用率。  相似文献   
18.
在一定温度下 ,将聚二甲基二烯丙基氯化铵 (PDMDAAC)溶解在聚合硫酸铁 (PFS)中 ,制成稳定的均相复合溶液。采用FT IR和X 射线衍射对其固体结构进行了分析。考察了液体复合絮凝剂的稳定性和固体复合絮凝剂的吸湿溶解性能 ,及其对生活污水的处理效果。结果表明 :在 6 0℃以下制备的液体复合絮凝剂具有良好的稳定性 ,固体复合絮凝剂具有良好的溶解性和比PFS更强的吸湿性 ;复合絮凝剂不是由PDMDAAC与PFS简单的机械混和 ,而是互相融合的复合体系 ;具有比PFS更优的去污性能和与PFS类似的较宽的最佳投药范围和 pH适用范围。对浊度和COD分别为 10 5 2和 187 5mg/L ,pH值为 7 5 9的生活污水 ,复合絮凝剂中Fe3 + 和PDMDAAC最佳用量分别为 5 4 .15和 4 2 7mg/L ,对COD的去除率为 77 14 % ,比PFS在用量为 81 2 2mg/L时的最佳效果高 12 %。  相似文献   
19.
通过多批次的小试试验考察了结晶沉淀-树脂吸附组合工艺对黄连素含铜废水的处理效果,并对产生的碱式氯化铜(TBCC)结晶沉淀进行X射线衍射(XRD)成分分析。结果表明:反应pH为7.0~9.0时,废水中超过99.9%的Cu 2+以碱式氯化铜结晶沉淀的形式得以回收,反应生成的碱式氯化铜沉淀通过水洗后,其成分符合GB/T 21696—2008《饲料添加剂 碱式氯化铜》质量标准。剩余的废水再经过树脂吸附工艺处理后,出水Cu 2+浓度小于1.0 mg/L。在小试试验的基础上,开展了中试试验研究,其结果进一步验证了小试试验的运行效果及该工艺的可行性。通过该处理工艺既可综合利用废水中的铜资源,又可将废水的pH由小于1调至大于7,有利于实现制药废水综合处理和达标排放。  相似文献   
20.
针对活性污泥反应器中的流态研究需要,通过备选示踪剂氯化锂、亚甲蓝和氯化钠的污泥吸附试验以及曝气静沉试验,研究了活性污泥对这3种示踪剂的吸附作用,以及示踪剂浓度对污泥处理效果的影响情况。结果表明,亚甲蓝易被污泥吸附,对试验数据干扰较大,且吸附亚甲蓝后,水样中污泥对CODCr的处理效率下降幅度达50%以上;氯化锂和氯化钠是离子型示踪剂,本身不易被吸附,投加后的活性污泥对CODCr的处理效率基本不变,保持在70%以上。从示踪剂投加量以及出水水质控制方面考虑,确定氯化锂为3种示踪剂中的最佳示踪剂。  相似文献   
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